Study of physicochemical and biological properties of calcium phosphate coatings prepared by RF magnetron sputtering of silicon-substituted hydroxyapatite; Journal of Surface Investigation. X-ray, Synchrotron and Neutron Techniques; Vol. 5, iss. 5
| Parent link: | Journal of Surface Investigation. X-ray, Synchrotron and Neutron Techniques: Scientific Journal Vol. 5, iss. 5.— 2011.— [P. 863-869] |
|---|---|
| Інші автори: | Pichugin V. F. Vladimir Fyodorovich, Surmeneva M. A. Maria Alexandrovna, Surmenev R. A. Roman Anatolievich, Khlusov I. A. Igor Albertovich, Epple M. |
| Резюме: | Title screen Coatings based on pure silicon and silicon-substituted hydroxyapatite were grown by RF magnetron sputtering. The coating surface morphology, phase and elemental composition were studied by scanning electron microscopy, energy-dispersive X-ray analysis, and infrared spectroscopy. It was found that coatings are X-ray-amorphous, their elemental composition being controlled by the sputtered target composition. The distribution of elements over the coating surface is homogeneous. Medical and biological properties of coatings were studied in vivo and in vitro. Osteogenic properties of coatings were studied. Coatings grown by sputtering of a stoichiometric hydroxyapatite target are biocompatible without osteoinductive activity. The introduction of silicate ions into the hydroxyapatite structure that forms an electrode target significantly enhances the in vivo effect of CaP magnetron coatings on the osteogenic activity and stromal bone-marrow stem cells. Режим доступа: по договору с организацией-держателем ресурса |
| Мова: | Англійська |
| Опубліковано: |
2011
|
| Предмети: | |
| Онлайн доступ: | http://dx.doi.org/10.1134/S1027451011090138 |
| Формат: | Електронний ресурс Частина з книги |
| KOHA link: | https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=642692 |
Схожі ресурси
In-vitro investigation of magnetron-sputtered coatings based on silicon-substituted hydroxyapatite; Journal of Surface Investigation. X-ray, Synchrotron and Neutron Techniques; Vol. 5, iss. 6
Опубліковано: (2011)
Опубліковано: (2011)
Adhesion properties of a silicon-containing calcium phosphate coating deposited by RF magnetron sputtering on a heated substrate; Journal of Surface Investigation. X-ray, Synchrotron and Neutron Techniques; Vol. 7, № 5
Опубліковано: (2013)
Опубліковано: (2013)
RF Magnetron Sputtering of Substituted Hydroxyapatite for Deposition of Biocoatings; Materials; Vol. 15, iss. 19
Опубліковано: (2022)
Опубліковано: (2022)
Calcium-phosphate coating on AZ91d magnesium alloy prepared via RF magnetron sputtering; Перспективы развития фундаментальных наук
за авторством: Мухаметкалиев Т. М. Тимур Мухамедрашидович
Опубліковано: (2015)
за авторством: Мухаметкалиев Т. М. Тимур Мухамедрашидович
Опубліковано: (2015)
Silicon-substituted hydroxyapatite coatings deposited by rf-magnetron sputtering; 11th Essen Symposium on Biomaterials and Biomechanics: Fundamentals and Clinical Applications March, 5th - 7th, 2009, Essen
Опубліковано: (2009)
Опубліковано: (2009)
RF-Magnetron Sputtering of Calcium Phosphates for Medical Implants: Structure and Properties; Surface Modification of Materials by Ion Beams (SMMIB-2019)
Опубліковано: (2019)
Опубліковано: (2019)
Glancing Angle Deposition of Zn-Doped Calcium Phosphate Coatings by RF Magnetron Sputtering; Coatings; Vol. 9, iss. 4
Опубліковано: (2019)
Опубліковано: (2019)
Ab initio calculations and a scratch test study of RF-magnetron sputter deposited hydroxyapatite and silicon-containing hydroxyapatite coatings; Surfaces and Interfaces; Vol. 21
Опубліковано: (2020)
Опубліковано: (2020)
Comparison Study on the Properties of the CaP Coatings Formed by RF-magnetron Sputtering of the Mg- and Sr-substituted [beta]-tricalcium Phosphate and Hydroxyapatite; Energy Fluxes and Radiation Effects (EFRE-2020 online)
Опубліковано: (2020)
Опубліковано: (2020)
Ntibacterial potential of Zn- and Cu- substituted hydroxyapatite coatings deposited by RF-magnetron sputtering: structure and properties; Gas Discharge Plasmas and Their Applications (GDP 2019)
Опубліковано: (2019)
Опубліковано: (2019)
Thin calcium-phosphate coatings produced by RF Magnetron sputtering and prospects for their use in biomedical engineering; Biomedical Engineering; Vol. 42, iss. 3
Опубліковано: (2008)
Опубліковано: (2008)
Electrical Potential and Topography of the Surface of a Calcium-Phosphate Coating Deposited with RF-Magnetron Discharge; Journal of Surface Investigation. X-ray, Synchrotron and Neutron Techniques; Vol. 14, iss. 1
Опубліковано: (2020)
Опубліковано: (2020)
Ultrathin film coating of hydroxyapatite (HA) on a magnesium–calcium alloy using RF magnetron sputtering for bioimplant applications; Materials Letters; Vol. 152
Опубліковано: (2015)
Опубліковано: (2015)
Radio frequency magnetron sputtering of Sr- and Mg-substituted ?-tricalcium phosphate: Analysis of the physicochemical properties and deposition rate of coatings; Applied Surface Science; Vol. 509
Опубліковано: (2020)
Опубліковано: (2020)
The preparation of calcium phosphate coatings on titanium and nickel-titanium by rf-magnetron-sputtered deposition: Composition, structure and micromechanical properties; Surface and Coatings Technology; Vol. 202, iss. 16
Опубліковано: (2008)
Опубліковано: (2008)
RF magnetron-sputtered coatings deposited from biphasic calcium phosphate targets for biomedical implant applications; Bioactive Materials; Vol. 2, iss. 3
Опубліковано: (2017)
Опубліковано: (2017)
Properties of RF-magnetron sputter deposited silver-doped hydroxyapatite-based coatings; Перспективы развития фундаментальных наук
за авторством: Мельников Е. С. Евгений Сергеевич
Опубліковано: (2015)
за авторством: Мельников Е. С. Евгений Сергеевич
Опубліковано: (2015)
Application of high-frequency magnetron sputtering to deposit thin calcium-phosphate biocompatible coatings on a titanium surface; Journal of Surface Investigation. X-ray, Synchrotron and Neutron Techniques; Vol. 1, iss. 6
Опубліковано: (2007)
Опубліковано: (2007)
Texture and microstructure development in rf magnetron sputter deposited hydroxyapatite coatings; Energy Fluxes and Radiation Effects (EFRE-2016)
Опубліковано: (2016)
Опубліковано: (2016)
Correlation between structural and mechanical properties of RF magnetron sputter deposited hydroxyapatite coating; Materials Characterization; Vol. 142
Опубліковано: (2018)
Опубліковано: (2018)
Biocompatible nanostructured coatings based on calcium phosphates prepared by means of rf-magnetron sputtering deposition; The 7th International Forum on Strategic Technology (IFOST-2012), September 18-21, 2012, Tomsk
Опубліковано: (2012)
Опубліковано: (2012)
Phase and elemental composition of silicon-containing hydroxyapatite-based coatings fabricated by RF-magnetron sputtering for medical implants; Inorganic Materials: Applied Research; Vol. 4, iss. 3
Опубліковано: (2013)
Опубліковано: (2013)
Influence of the substrate bias on the stoichiometry and structure of RF-magnetron sputter-deposited silver-containing calcium phosphate coatings; Materialwissenschaft und Werkstofftechnik; Vol. 44, iss. 2-3
Опубліковано: (2013)
Опубліковано: (2013)
Effects of annealing in vacuum on the microstructure of silicon-containing calcium phosphate films deposited on a ZrNb alloy by radio-frequency magnetron sputtering; Vacuum; Vol. 212
Опубліковано: (2023)
Опубліковано: (2023)
Antibacterial potential of Zn- and Cu-substituted hydroxyapatite-based coatings deposited by RF-magnetron sputtering; Journal of Physics: Conference Series; Vol. 1393 : Gas Discharge Plasmas and Their Applications (GDP 2019)
Опубліковано: (2019)
Опубліковано: (2019)
Tribological behaviour of RF-magnetron sputter deposited hydroxyapatite coatings in physiological solution; Ceramics International; Vol. 43, iss. 9
Опубліковано: (2017)
Опубліковано: (2017)
Calcium Phosphate Targets for RF Magnetron Sputtering of Biocoatings; AIP Conference Proceedings; Vol. 2167 : Advanced Materials with Hierarchical Structure for New Technologies and Reliable Structures 2019 (AMHS'19)
Опубліковано: (2019)
Опубліковано: (2019)
Hydroxyapatite coating on biodegradable AZ31 and Mg-Ca alloys prepared by RF-magnetron sputtering; AIP Conference Proceedings; Vol. 1688 : New Operational Technologies
Опубліковано: (2015)
Опубліковано: (2015)
Influence of the high-power ion-beam irradiation of a hydroxyapatite target on the properties of formed calcium phosphate coatings; Journal of Surface Investigation. X-ray, Synchrotron and Neutron Techniques; Vol. 7, iss. 5
за авторством: Bleykher (Bleicher) G. A. Galina Alekseevna
Опубліковано: (2013)
за авторством: Bleykher (Bleicher) G. A. Galina Alekseevna
Опубліковано: (2013)
RF magnetron sputtering of a hydroxyapatite target: A comparison study on polytetrafluorethylene and titanium substrates; Applied Surface Science; Vol. 414
Опубліковано: (2017)
Опубліковано: (2017)
Wettability of Thin Silicate-Containing Hydroxyapatite Films Formed by RF-Magnetron Sputtering; Russian Physics Journal; Vol. 56, iss. 10
Опубліковано: (2014)
Опубліковано: (2014)
Erratum to: Wettability of Thin Silicate-Containing Hydroxyapatite Films formed by RF-Magnetron Sputtering; Russian Physics Journal; Vol. 56, iss. 11
Опубліковано: (2014)
Опубліковано: (2014)
Incorporation of silver nanoparticles into magnetron-sputtered calcium phosphate layers on titanium as an antibacterial coating; Colloids and Surfaces B: Biointerfaces; Vol. 156
Опубліковано: (2017)
Опубліковано: (2017)
Effect of the Surface Treatment of Titanium on the Texture, Mechanical and Physicochemical Properties of the Rf-Magnetron Sputtered Silver-Doped Hydroxyapatite Coatings; XII International Conference on Nanostructured Materials (NANO 2014), July 13-18, 2014 Moscow, Russia
Опубліковано: (2014)
Опубліковано: (2014)
Adhesion properties of a three-layer system based on RF-magnetron sputter deposited calcium-phosphate coating and silver nanoparticles; 11th International Forum on Strategic Technology (IFOST 2016); Pt. 1
Опубліковано: (2016)
Опубліковано: (2016)
Fabrication of NO-containing calcium phosphate coatings via direct introduction of argon-nitrogen-mixtures applied in reactive RF-magnetron sputtering; Journal of Physics: Conference Series; Vol. 1954 : Films and Coatings (ICFC 2021)
Опубліковано: (2021)
Опубліковано: (2021)
Effect of silicate doping on the structure and mechanical properties of thin nanostructured RF magnetron sputter-deposited hydroxyapatite films; Surface and Coatings Technology; Vol. 275
Опубліковано: (2015)
Опубліковано: (2015)
Structural evolution and growth mechanisms of RF-magnetron sputter-deposited hydroxyapatite thin films on the basis of unified principles; Applied Surface Science; Vol. 425
Опубліковано: (2017)
Опубліковано: (2017)
Physical-Mechanical Characteristics of RF Magnetron Sputter-Deposited Coatings Based on Silver-Doped Hydroxyapatite; Russian Physics Journal; Vol. 56, iss. 10
Опубліковано: (2014)
Опубліковано: (2014)
Calcium phosphate coating deposition by radio frequency magnetron sputtering in the various inert gases: The pilot study; Materials Chemistry and Physics; Vol. 235
Опубліковано: (2019)
Опубліковано: (2019)
Схожі ресурси
-
In-vitro investigation of magnetron-sputtered coatings based on silicon-substituted hydroxyapatite; Journal of Surface Investigation. X-ray, Synchrotron and Neutron Techniques; Vol. 5, iss. 6
Опубліковано: (2011) -
Adhesion properties of a silicon-containing calcium phosphate coating deposited by RF magnetron sputtering on a heated substrate; Journal of Surface Investigation. X-ray, Synchrotron and Neutron Techniques; Vol. 7, № 5
Опубліковано: (2013) -
RF Magnetron Sputtering of Substituted Hydroxyapatite for Deposition of Biocoatings; Materials; Vol. 15, iss. 19
Опубліковано: (2022) -
Calcium-phosphate coating on AZ91d magnesium alloy prepared via RF magnetron sputtering; Перспективы развития фундаментальных наук
за авторством: Мухаметкалиев Т. М. Тимур Мухамедрашидович
Опубліковано: (2015) -
Silicon-substituted hydroxyapatite coatings deposited by rf-magnetron sputtering; 11th Essen Symposium on Biomaterials and Biomechanics: Fundamentals and Clinical Applications March, 5th - 7th, 2009, Essen
Опубліковано: (2009)